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Microstructural and microtextural characterization of oxide scale on steel using electron backscatter diffraction.

S Birosca1, D Dingley, R L Higginson

  • 1IPTME: Institute of Polymer Technology and Materials Engineering, Loughborough University, Loughborough, Leicestershire LE11 3TU, UK.

Journal of Microscopy
|March 11, 2004
PubMed
Summary

Investigating iron oxide scales on steel using electron back-scatter diffraction (EBSD) reveals critical microstructural details. This research enhances understanding of oxide behavior during steel processing and removal.

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Area of Science:

  • Materials Science
  • Metallurgy
  • Surface Engineering

Background:

  • High-temperature oxidation of steel is a significant industrial concern.
  • Understanding iron oxide scale microstructure is crucial for steel processing and post-processing.
  • Conventional microscopy methods struggle to resolve oxide microstructures effectively.

Purpose of the Study:

  • To investigate the microstructure and microtexture of iron oxide layers formed on interstitial free steel.
  • To evaluate the effectiveness of electron back-scatter diffraction (EBSD) in characterizing these oxide scales.
  • To correlate oxide characteristics with varying oxidation times and temperatures under industrial conditions.

Main Methods:

  • Utilized electron back-scatter diffraction (EBSD) for detailed microstructural and microtextural analysis.

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  • Performed heat treatments under normal oxidation conditions simulating industrial steel manufacturing.
  • Analyzed oxide composition, morphology, microstructure, and microtexture using EBSD.
  • Main Results:

    • EBSD successfully distinguished different phases within the iron oxide scales.
    • Valuable information on microstructure and orientation relationships between steel and scale layers was obtained.
    • Microstructure and microtexture of oxide layers were characterized at different times and temperatures.

    Conclusions:

    • Electron back-scatter diffraction (EBSD) is a powerful technique for analyzing iron oxide scales on steel.
    • The study provides critical insights into oxide scale behavior relevant to steel manufacturing processes.
    • Understanding oxide microstructure and texture aids in optimizing steel processing and scale removal strategies.